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New generation ICG-based contrast agents for ultrasound-switchable fluorescence imaging.


ABSTRACT: Recently, we developed a new technology, ultrasound-switchable fluorescence (USF), for high-resolution imaging in centimeter-deep tissues via fluorescence contrast. The success of USF imaging highly relies on excellent contrast agents. ICG-encapsulated poly(N-isopropylacrylamide) nanoparticles (ICG-NPs) are one of the families of the most successful near-infrared (NIR) USF contrast agents. However, the first-generation ICG-NPs have a short shelf life (<1 month). This work significantly increases the shelf life of the new-generation ICG-NPs (>6 months). In addition, we have conjugated hydroxyl or carboxyl function groups on the ICG-NPs for future molecular targeting. Finally, we have demonstrated the effect of temperature-switching threshold (Tth) and the background temperature (TBG) on the quality of USF images. We estimated that the Tth of the ICG-NPs should be controlled at ~38-40?°C (slightly above the body temperature of 37?°C) for future in vivo USF imaging. Addressing these challenges further reduces the application barriers of USF imaging.

SUBMITTER: Yu S 

PROVIDER: S-EPMC5075910 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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New generation ICG-based contrast agents for ultrasound-switchable fluorescence imaging.

Yu Shuai S   Cheng Bingbing B   Yao Tingfeng T   Xu Cancan C   Nguyen Kytai T KT   Hong Yi Y   Yuan Baohong B  

Scientific reports 20161024


Recently, we developed a new technology, ultrasound-switchable fluorescence (USF), for high-resolution imaging in centimeter-deep tissues via fluorescence contrast. The success of USF imaging highly relies on excellent contrast agents. ICG-encapsulated poly(N-isopropylacrylamide) nanoparticles (ICG-NPs) are one of the families of the most successful near-infrared (NIR) USF contrast agents. However, the first-generation ICG-NPs have a short shelf life (<1 month). This work significantly increases  ...[more]

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